• Laser & Optoelectronics Progress
  • Vol. 58, Issue 7, 0700004 (2021)
Xingliang Wu1, Yingying Song1, Xiaocheng Zhang1, Mingjiang Zhang1, Lijun Qiao1, Tao Wang1, Shaohua Gao2, and Jianzhong Zhang1、2、*
Author Affiliations
  • 1Key Laboratory of Advanced Transducers and Intelligent Control System, Ministry of Education and Shanxi Province, Taiyuan University of Technology, Taiyuan , Shanxi 030024, China
  • 2College of Physics and Optoelectronics, Taiyuan University of Technology, Taiyuan , Shanxi 030024, China
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    DOI: 10.3788/LOP202158.0700004 Cite this Article Set citation alerts
    Xingliang Wu, Yingying Song, Xiaocheng Zhang, Mingjiang Zhang, Lijun Qiao, Tao Wang, Shaohua Gao, Jianzhong Zhang. Review of Brillouin Dynamic Grating[J]. Laser & Optoelectronics Progress, 2021, 58(7): 0700004 Copy Citation Text show less
    References

    [1] Scott A, Hazell M. High-efficiency scattering in transient Brillouin-enhanced four-wave mixing[J]. IEEE Journal of Quantum Electronics, 22, 1248-1257(1986).

    [2] Song K Y, Hotate K. All-optical dynamic grating generation based on Brillouin scattering in polarization maintaining fiber[J]. Proceedings of SPIE, 7004, 70043T(2008).

    [3] Dong Y K, Chen L, Bao X Y. Characterization of the Brillouin grating spectra in a polarization-maintaining fiber[J]. Optics Express, 18, 18960-18967(2010).

    [4] Xu Z N, Zhao L J, Chen F F et al. Temperature and strain sensing mechanism in polarization maintaining fiber based on Brillouin dynamic grating[J]. Acta Photonica Sinica, 48, 0806001(2019).

    [5] Song K Y. Operation of Brillouin dynamic grating in single-mode optical fibers[J]. Optics Letters, 36, 4686-4688(2011).

    [6] Zou W W, Chen J P. All-optical generation of Brillouin dynamic grating based on multiple acoustic modes in a single-mode dispersion-shifted fiber[J]. Optics Express, 21, 14771-14779(2013).

    [7] Li S P, Li M J, Vodhanel R S. All-optical Brillouin dynamic grating generation in few-mode optical fiber[J]. Optics Letters, 37, 4660-4662(2012).

    [8] Li A, Hu Q, Chen X et al. Characterization of distributed modal birefringence in a few-mode fiber based on Brillouin dynamic grating[J]. Optics Letters, 39, 3153-3156(2014).

    [9] Kim Y H, Song K Y. Mapping of intermodal beat length distribution in an elliptical-core two-mode fiber based on Brillouin dynamic grating[J]. Optics Express, 22, 17292-17302(2014).

    [10] Zhang H Y, Yuan Z J, Liu Z Y et al. Simultaneous measurement of strain and temperature using a polarization-maintaining photonic crystal fiber with stimulated Brillouin scattering[J]. Applied Physics Express, 10, 012501(2017).

    [11] Winful H G. Chirped Brillouin dynamic gratings for storing and compressing light[J]. Optics Express, 21, 10039-10047(2013).

    [12] Dong M, Winful H G. Area dependence of chirped-pulse stimulated Brillouin scattering: implications for stored light and dynamic gratings[J]. Journal of the Optical Society of America B, 32, 2514-2519(2015).

    [13] Quoc Ngo N. Design of an optical temporal integrator based on a phase-shifted fiber Bragg grating in transmission[J]. Optics Letters, 32, 3020-3022(2007).

    [14] Kabakova I V, Corcoran B, Bolger J A et al. All-optical self-switching in optimized phase-shifted fiber Bragg grating[J]. Optics Express, 17, 5083-5088(2009).

    [15] Zhang W F, Li W Z, Yao J P. Optical differentiator based on an integrated sidewall phase-shifted Bragg grating[J]. IEEE Photonics Technology Letters, 26, 2383-2386(2014).

    [16] Li W Z, Li M, Yao J P. A narrow-passband and frequency-tunable microwave photonic filter based on phase-modulation to intensity-modulation conversion using a phase-shifted fiber Bragg grating[J]. IEEE Transactions on Microwave Theory and Techniques, 60, 1287-1296(2012).

    [17] Dong Y K, Zhou D W, Teng L et al. Phase-shifted Brillouin dynamic gratings using single pump phase-modulation: proof of concept[J]. Optics Express, 24, 11218-11231(2016).

    [18] Liu H, Zhang J Z, Zhang M J. Brillouin scattering light characteristics of chaotic laser in optical fibers[J]. Acta Optica Sinica, 36, 0406004(2016).

    [19] Li Z P. Generation and optimization of chaotic Brillouin dynamic grating[D], 21-37(2018).

    [20] Zhang J Z, Li Z P, Wu Y et al. Optimized chaotic Brillouin dynamic grating with filtered optical feedback[J]. Scientific Reports, 8, 1-9(2018).

    [21] Zhang J Z, Li Z P, Zhang M J et al. Characterization of Brillouin dynamic grating based on chaotic laser[J]. Optics Communications, 396, 210-215(2017).

    [22] Xu Y P, Gao S, Lu P et al. Low-noise Brillouin random fiber laser with a random grating-based resonator[J]. Optics Letters, 41, 3197-3200(2016).

    [23] Abdullina S R, Vlasov A A, Lobach I A et al. Single-frequency Yb-doped fiber laser with distributed feedback based on a random FBG[J]. Laser Physics Letters, 13, 075104(2016).

    [24] Xu Y, Zhang L, Gao S et al. Highly sensitive fiber random-grating-based random laser sensor for ultrasound detection[J]. Optics Letters, 42, 1353-1356(2017).

    [25] Song Y Y, Li S C, Zhang J Z et al. The modeling of random Brillouin dynamic grating[J]. Optical Fiber Technology, 53, 102034(2019).

    [26] Zou W W, He Z Y, Hotate K. Complete discrimination of strain and temperature using Brillouin frequency shift and birefringence in a polarization-maintaining fiber[J]. Optics Express, 17, 1248-1255(2009).

    [27] Zou W W, He Z Y, Hotate K. Demonstration of Brillouin distributed discrimination of strain and temperature using a polarization-maintaining optical fiber[J]. IEEE Photonics Technology Letters, 22, 526-528(2010).

    [28] Dong Y K, Chen L, Bao X Y. High-spatial-resolution time-domain simultaneous strain and temperature sensor using Brillouin scattering and birefringence in a polarization-maintaining fiber[J]. IEEE Photonics Technology Letters, 22, 1364-1366(2010).

    [29] Song K Y, Yoon H J. High-resolution Brillouin optical time domain analysis based on Brillouin dynamic grating[J]. Optics Letters, 35, 52-54(2010).

    [30] Song K Y, Yoon H J. High sensitivity optical time-domain reflectometry based on Brillouin dynamic grating in polarization maintaining fiber[J]. Proceedings of SPIE, 8421, 842126(2012).

    [31] Chin S, Primerov N, Thevenaz L. Sub-centimeter spatial resolution in distributed fiber sensing based on dynamic Brillouin grating in optical fibers[J]. IEEE Sensors Journal, 12, 189-194(2012).

    [32] Bergman A, Langer T, Tur M. High spatial resolution, low-noise Brillouin dynamic gratings reflectometry based on digital pulse compression[J]. Optics Letters, 41, 3643-3646(2016).

    [33] Dong Y K, Bao X Y, Chen L. Distributed temperature sensing based on birefringence effect on transient Brillouin grating in a polarization-maintaining photonic crystal fiber[J]. Optics Letters, 34, 2590-2592(2009).

    [34] Dong Y K, Zhou D W, Teng L et al. Principle of Brillouin dynamic grating and its applications in optical fiber sensing[J]. Acta Physica Sinica, 66, 075201(2017).

    [35] Thevenaz L, Primerov N, Chin S et al. Dynamic Brillouin gratings: a new tool in fibers for all-optical signal processing[C], 12442987(2011).

    [36] Zhu Z M, Gauthier D J, Boyd R W. Stored light in an optical fiber via stimulated Brillouin scattering[C], QMI: QMI3(2008).

    [37] Soto M A, Denisov A, Angulo-Vinuesa X et al. All-optical flip-flops based on dynamic Brillouin gratings in fibers[J]. Optics Letters, 42, 2539-2542(2017).

    Xingliang Wu, Yingying Song, Xiaocheng Zhang, Mingjiang Zhang, Lijun Qiao, Tao Wang, Shaohua Gao, Jianzhong Zhang. Review of Brillouin Dynamic Grating[J]. Laser & Optoelectronics Progress, 2021, 58(7): 0700004
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